Description
Parameter Specifications
- Input Voltage: Capable of handling input voltages like 6900V, 4200V, 3300V, 2200V or 1200V4.
- Input Points: Each of the five resistor strings has three stab connectors, totaling 15 input points, with two optional wire jumpers per string34.
- Output: The five strings’ outputs connect to a 20-pin ribbon header. There is a metal oxide varistor to protect against excessive output voltage234.
- Resistors: Four resistors per string for G2 variation23.
Applications
- Gas Turbine Control Systems: It is used in GE’s Mark V series gas turbine control systems, playing a vital role in attenuating AC and DC voltages on SCR bridges to ensure accurate derivation of bridge voltage feedback4.
- Power Generation: In power plants, it helps in monitoring and adjusting voltage feedback in related electrical control systems.
Weight and Dimensions
- Weight: Approximately 3 lbs (about 1.36 kg)2.
- Dimensions: There is no specific dimension data found, but it’s designed to fit in the relevant control cabinets of the Mark V system.
Features
- Configurable Input: The input can be configured via stab connectors and wire jumpers to adapt to different voltage levels4.
- Output Protection: Equipped with metal oxide varistors to protect the output circuit.
- Standard Compliance: Complies with CSA, EC and UL standards23.
Stability and Reliability
- High-quality Components: Manufactured with high-quality materials and components to ensure stable performance.
- Compliance with Standards: Meeting international standards like CSA, EC and UL indicates its reliability and stability in different application scenarios.
- Design for Specific Systems: As part of the Mark V series, it is designed to work stably with other components in the system.
Real-world Cases
In a large power plant using GE’s Mark V gas turbine control system, the DS200NATOG2A is used to process voltage feedback signals. It accurately attenuates the AC and DC voltages of the SCR bridge. Thanks to its stable operation, the gas turbine control system can precisely monitor and control the voltage, ensuring the safe and efficient operation of the gas turbine and power generation equipment.
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